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Performance of fly ash incorporated recycled aggregates concrete column under axial compression: Experimental and numerical study

机译:粉煤灰结合再生骨料混凝土柱轴压性能:试验与数值研究

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摘要

The reinforcing steel properties and concrete constituents such as binder materials as well as type and geometry of coarse aggregates influence performance of a reinforced concrete column under uniaxial compression. This paper investigates full-scale reinforced concrete (RC) column specimens comprising 100% recycled coarse aggregates and fly ash as partial replacement of cement. Two cement replacement ratios such as 20% (FA20RAC) and 30% (FA30RAC) are considered. Particle packing method is used for proportioning of concrete. This mix design method leads to dense packing with minimized voids in fly ash incorporated recycled aggregate concrete (FARAC) mix requiring less fresh binder content. As compared to natural aggregate concrete (NAC), the load carrying capacity of FA20RAC and FA30RAC column specimens are higher by about 4% and 9% respectively. Prediction of full-scale column behaviour from the standard cylinder test highlights size effect that affects the peak load less in FARAC as compared to NAC. Two-dimensional numerical analysis of a transverse tie confined concrete is carried out using fibre element method. The effect of core concrete on the development of confining pressure is examined for RC columns with similar arrangement and properties of lateral ties.
机译:钢筋的性能和混凝土成分(例如粘合剂材料)以及粗骨料的类型和几何形状会影响钢筋混凝土柱在单轴压缩下的性能。本文研究了包含100%再生粗骨料和粉煤灰作为水泥的部分替代品的全尺寸钢筋混凝土(RC)柱标本。考虑了两种水泥替代率,例如20%(FA20RAC)和30%(FA30RAC)。颗粒填充法用于混凝土的配料。这种混合料设计方法可在要求掺入较少的新鲜粘结剂的情况下,使掺入粉煤灰的再生骨料混凝土(FARAC)混合料中密实填充,并使空隙最小化。与天然骨料混凝土(NAC)相比,FA20RAC和FA30RAC柱试样的承载能力分别提高了约4%和9%。通过标准气瓶测试预测全尺寸色谱柱的性能,突出了尺寸效应,与NAC相比,尺寸效应对FARAC的峰负荷影响较小。横向约束混凝土的二维数值分析是采用纤维单元法进行的。对于具有相似布置和侧向连接特性的RC柱,研究了芯混凝土对围压发展的影响。

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